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Drosophila melanogaster as a model system for the evaluation of anti-aging compounds

机译:果蝇(Drosophila melanogaster)作为评估抗衰老化合物的模型系统

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摘要

Understanding the causes of aging is a complex problem due to the multiple factors that influence aging, which include genetics, environment, metabolism and reproduction, among others. These multiple factors create logistical difficulties in the evaluation of anti-aging agents. There is a need for good model systems to evaluate potential anti-aging compounds. The model systems used should represent the complexities of aging in humans, so that the findings may be extrapolated to human studies, but they should also present an opportunity to minimize the variables so that the experimental results can be accurately interpreted. In addition to positively affecting lifespan, the impact of the compound on the physiologic confounders of aging, including fecundity and the health span-the period of life where an organism is generally healthy and free from serious or chronic illness-of the model organism needs to be evaluated. Fecundity is considered a major confounder of aging in fruit flies. It is well established that female flies that are exposed to toxic substances typically reduce their dietary intake and their reproductive output and display an artifactual lifespan extension. As a result, drugs that achieve longevity benefits by reducing fecundity as a result of diminished food intake are probably not useful candidates for eventual treatment of aging in humans and should be eliminated during the screening process.Drosophila melanogaster provides a suitable model system for the screening of anti-aging compounds as D. melanogaster and humans have many conserved physiological and biological pathways. In this paper, I propose an algorithm to screen anti-aging compounds using Drosophila melanogaster as a model system.
机译:由于多种因素会影响衰老,因此了解衰老的原因是一个复杂的问题,其中包括遗传,环境,新陈代谢和生殖等。这些多种因素在评估抗衰老剂方面造成了后勤上的困难。需要一种好的模型系统来评估潜在的抗衰老化合物。所使用的模型系统应该代表人类衰老的复杂性,以便可以将研究结果推论到人类研究中,但是它们也应该提供使变量最小化的机会,以便可以准确地解释实验结果。除了对寿命有积极影响之外,该化合物还对模型生物的衰老生理混杂因素(包括生殖力和健康寿命)的影响(包括生命力,即生物体通常健康且没有严重或慢性疾病的生命周期)。被评估。生殖力被认为是果蝇衰老的主要混杂因素。公认的是,暴露于有毒物质的雌蝇通常会减少其饮食摄入量和生殖产量并显示出人为的寿命延长。因此,通过减少食物摄入而减少生育力而获得长寿益处的药物可能不是最终用于治疗人类衰老的有用候选药物,应在筛选过程中予以淘汰。果蝇为筛选提供了合适的模型系统D. melanogaster和人类的抗衰老化合物具有许多保守的生理和生物学途径。在本文中,我提出了一种以果蝇果蝇为模型系统筛选抗衰老化合物的算法。

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